A low temperature plasma probe uses a dedicated heated gas tube to deliver thermal energy directly to the sample surface for enhanced desorption.
A surface interaction sample introduction system directs a gas jet onto a heated settling chamber wall to disrupt free jet expansion and promote ion declustering.
A laser ablation apparatus adjusts irradiation conditions based on real-time film thickness measurements to maintain consistent material removal.
Liquid-liquid extraction in a narrow capillary suppresses matrix effects and pre-concentrates analytes, eliminating expensive chromatography steps.
Visual color coding on exchangeable mounting structures matches sample introduction components, preventing mixing errors during cleaning and storage.
A display system overlays spectroscopy data on sample images to show material composition at specific locations.
Nanopost arrays eliminate matrix requirements and suppress spontaneous ion yield fluctuations through precise geometric parameter control.
An auto-sampling system uses three independent syringes and a valve network to dynamically introduce carrier, diluent, and stock matrix flows.
An ion source apparatus with a heater and ionization promoting inlet connects chromatography devices to mass spectrometers.
Low-temperature plasma ionizes volatile organic compounds adsorbed on membranes for mass spectrometry detection.